Literature DB >> 21291859

The Pseudomonas aeruginosa membranes: a target for a new amphiphilic aminoglycoside derivative?

Myriam Ouberai1, Farid El Garch, Antoine Bussiere, Mickael Riou, David Alsteens, Laurence Lins, Isabelle Baussanne, Yves F Dufrêne, Robert Brasseur, Jean-Luc Decout, Marie-Paule Mingeot-Leclercq.   

Abstract

Aminoglycosides are among the most potent antimicrobials to eradicate Pseudomonas aeruginosa. However, the emergence of resistance has clearly led to a shortage of treatment options, especially for critically ill patients. In the search for new antibiotics, we have synthesized derivatives of the small aminoglycoside, neamine. The amphiphilic aminoglycoside 3',4',6-tri-2-naphtylmethylene neamine (3',4',6-tri-2NM neamine) has appeared to be active against sensitive and resistant P. aeruginosa strains as well as Staphylococcus aureus strains (Baussanne et al., 2010). To understand the molecular mechanism involved, we determined the ability of 3',4',6-tri-2NM neamine to alter the protein synthesis and to interact with the bacterial membranes of P. aeruginosa or models mimicking these membranes. Using atomic force microscopy, we observed a decrease of P. aeruginosa cell thickness. In models of bacterial lipid membranes, we showed a lipid membrane permeabilization in agreement with the deep insertion of 3',4',6-tri-2NM neamine within lipid bilayer as predicted by modeling. This new amphiphilic aminoglycoside bound to lipopolysaccharides and induced P. aeruginosa membrane depolarization. All these effects were compared to those obtained with neamine, the disubstituted neamine derivative (3',6-di-2NM neamine), conventional aminoglycosides (neomycin B and gentamicin) as well as to compounds acting on lipid bilayers like colistin and chlorhexidine. All together, the data showed that naphthylmethyl neamine derivatives target the membrane of P. aeruginosa. This should offer promising prospects in the search for new antibacterials against drug- or biocide-resistant strains.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21291859     DOI: 10.1016/j.bbamem.2011.01.014

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  20 in total

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4.  A review of patents (2011-2015) towards combating resistance to and toxicity of aminoglycosides.

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9.  Bactericidal efficiency and modes of action of the novel antimicrobial peptide T9W against Pseudomonas aeruginosa.

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10.  Negatively Charged Lipids as a Potential Target for New Amphiphilic Aminoglycoside Antibiotics: A BIOPHYSICAL STUDY.

Authors:  Guillaume Sautrey; Micheline El Khoury; Andreia Giro Dos Santos; Louis Zimmermann; Magali Deleu; Laurence Lins; Jean-Luc Décout; Marie-Paule Mingeot-Leclercq
Journal:  J Biol Chem       Date:  2016-05-04       Impact factor: 5.157

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